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熔融静电纺丝直写模式制备的聚己内酯支架中的真皮成纤维细胞浸润。

Dermal fibroblast infiltration of poly(ε-caprolactone) scaffolds fabricated by melt electrospinning in a direct writing mode.

机构信息

Tissue Repair and Regeneration Program, Institute of Health and Biomedical Innovation, Queensland University of Technology, Brisbane, Australia.

出版信息

Biofabrication. 2013 Jun;5(2):025001. doi: 10.1088/1758-5082/5/2/025001. Epub 2013 Feb 27.

Abstract

Melt electrospinning in a direct writing mode is a recent additive manufacturing approach to fabricate porous scaffolds for tissue engineering applications. In this study, we describe porous and cell-invasive poly (ε-caprolactone) scaffolds fabricated by combining melt electrospinning and a programmable x-y stage. Fibers were 7.5 ± 1.6 µm in diameter and separated by interfiber distances ranging from 8 to 133 µm, with an average of 46 ± 22 µm. Micro-computed tomography revealed that the resulting scaffolds had a highly porous (87%), three-dimensional structure. Due to the high porosity and interconnectivity of the scaffolds, a top-seeding method was adequate to achieve fibroblast penetration, with cells present throughout and underneath the scaffold. This was confirmed histologically, whereby a 3D fibroblast-scaffold construct with full cellular penetration was produced after 14 days in vitro. Immunohistochemistry was used to confirm the presence and even distribution of the key dermal extracellular matrix proteins, collagen type I and fibronectin. These results show that melt electrospinning in a direct writing mode can produce cell invasive scaffolds, using simple top-seeding approaches.

摘要

熔融静电纺丝的直接书写模式是一种用于组织工程应用的制造多孔支架的新型增材制造方法。在这项研究中,我们描述了通过结合熔融静电纺丝和可编程 x-y 平台来制造多孔和细胞侵入性聚(ε-己内酯)支架。纤维的直径为 7.5±1.6μm,纤维间的距离为 8-133μm,平均为 46±22μm。微计算机断层扫描显示,所得支架具有高度多孔(87%)的三维结构。由于支架的高孔隙率和连通性,采用顶部播种方法即可实现成纤维细胞的穿透,细胞存在于支架的整个表面和下方。这通过组织学得到了证实,即在体外 14 天后,产生了具有完全细胞穿透的 3D 成纤维细胞-支架构建体。免疫组织化学用于证实关键的真皮细胞外基质蛋白,即胶原蛋白 I 和纤连蛋白的存在和均匀分布。这些结果表明,熔融静电纺丝的直接书写模式可以使用简单的顶部播种方法来生产细胞侵入性支架。

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